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Analysis of Vienna rectifier

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Języki publikacji
EN
Abstrakty
EN
It is common to find the inexpensive but robust electric power rectification method to lullil the demands of clean power conversion [1-12]. The Vienna rectifier structure [1] is one of the hopeful construction to fulfil these demands. It may be classified as the Clean Power Converter. It lets us obtain PFC rectification in simpler than the PWM converter system. The \ inina rectifier has three control points. In addition the Vienna rectifier is the three voltage level system with less current ripples than in the case of the PWM converter. However, it has some disadvantages. The Vienna rectifier system is an unidirectional converter. It can function onlv in the rectifier mode, the working in the inverter mode is impossible and the generation of the reactive power is strongly restricted. Usually the Vienna rectifier is controlled on the basis of the direct current control method [4,5,6]. However, this method is not perfect because it lets the improper control sequences appears. In this paper the mathematical model of the Vienna rectifier is derived. The voltage space vectors and their dependencies to the phase currents are denned. The range of the phase displacement angle and the maximum voltage space vector module v. phase displacement angle is drawn out for the case of the sinusoidal space vector modulation. The drawn out relations are proven by simulation results.
Twórcy
autor
  • Technical University of Kielce, Poland, Al. Tysiąclecia Państwa Polskiego 7, 25-314 Kielce, ene@tu.kielce.pl
Bibliografia
  • 1. Kolar J. W., Zach F. C.: A Novel Three-Phase Utility Interface Minimising Line Current Harmonics of High-Power Telecommunications Rectifier Modules. Record of the 16th IEEE International Telecommunications Energy Conference, Vancouver. Canada, Oct. 30-Nov. 3, pp. 367-374. 1994.
  • 2. Kolar J. W., Ertl H.: Status of the Techniques of Three- Phase Rectifier Systems with Law Effects on the Mains. 21 SI IN- TELEC, Copenhagen, Denmark, June 6-9, pp. No. 14-1,1999.
  • 3. Minibock J., KoIar J. W.: Comparative Theoretical and Experimental Evaluation oj Bridge Leg Topologies fj a Three- Phase Three-Level Unity Power Factor Rectifier. Proceedings of the IEEE Power Electronics Specialists Conference, Vancouver, Canada, June 17-21,3, pp. 1641-1646,2001.
  • 4. Drofenik U., Kolar J.W.: Comparison of NOT Synchronized Saw- tooth Carrier and Synchronized Triangular Carrier Phase Current Control for the VIENNA Rectifier I. ISIE'99, Bied, Slovenia, 1999.
  • 5. Minibock J., Slro gerer F., Kolar J. W.: A Novel Concept for Mains Voltage Proportional Input Current Shoping of a VIENNA Rectifier Eliminating Controller Multipliers. Proceedings of the IEEE 16th IEEE Applied Power Electronics Conference, Anaheim, USA, March 4-8, I, pp. 587-591, 200 I.
  • 6. Strogerr F., Minibock J., KoIar J. W .: Implementation of a Novel Control Concept for Reliable Operation of a VIENNA Rectifier under Heavilv Unbalanced Mains Voltage Conditions . Proceedings of the IEEE Power Electronics Specialists Conference, Vancouver, Canada, June 17-21, 200 I.
  • 7. Malinowski M.: Sensorless Control Strategies for Three- Phase PWM Rectifiers. Warsaw University of Technology, Warsaw 2001, (PhD thesis).
  • 8. Każmierkowski M. P., Krishnan R., Blaabjerg F.: Control in Power Electronics - selected problems. Academic Press, Elsevier Science (USA) 2002.
  • 9. Strzelecki R., Supronowicz H.' Współczynnik mocy w systemach zasilania prqdu przemiennego i metody jego poprawy [Alternating Current Suply Systems and Methods of Its Improvement]. Oficyna Wydawnicza Politechniki Warszawskiej, Warszawa 2000.
  • 10. Tunia H., Winiarski B.: Energoelektronika. [Power electronics]. WNT, Warszawa 1994.
  • 11. Radomski G.: Analysis of Modified Diode Bridge Rectifier with Improved Power Factor. Electrical Power Quality and Utilisation, 9, 1,2003.
  • 12. Radomski G.: Experimental lnvestigations of Modified Diode Rectifier with Improved Power Factor. Electrical Power Quality and Utilisation, 9, I, 2003.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT1-0017-0006
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